Department of Biomedicine, Health, Aarhus University, Aarhus, Denmark; and
Department of Biomedicine, Health, Aarhus University, Aarhus, Denmark; and.
Am J Physiol Cell Physiol. 2017 Jun 1;312(6):C673-C686. doi: 10.1152/ajpcell.00041.2017. Epub 2017 Mar 22.
The choroid plexus epithelium is a secretory epithelium par excellence. However, this is perhaps not the most prominent reason for the massive interest in this modest-sized tissue residing inside the brain ventricles. Most likely, the dominant reason for extensive studies of the choroid plexus is the identification of this epithelium as the source of the majority of intraventricular cerebrospinal fluid. This finding has direct relevance for studies of diseases and conditions with deranged central fluid volume or ionic balance. While the concept is supported by the vast majority of the literature, the implication of the choroid plexus in secretion of the cerebrospinal fluid was recently challenged once again. Three newer and promising areas of current choroid plexus-related investigations are as follows: ) the choroid plexus epithelium as the source of mediators necessary for central nervous system development, ) the choroid plexus as a route for microorganisms and immune cells into the central nervous system, and ) the choroid plexus as a potential route for drug delivery into the central nervous system, bypassing the blood-brain barrier. Thus, the purpose of this review is to highlight current active areas of research in the choroid plexus physiology and a few matters of continuous controversy.
脉络丛上皮是一种卓越的分泌上皮。然而,这可能不是人们对位于脑室内的这种体积较小的组织产生浓厚兴趣的最主要原因。脉络丛受到广泛研究的最主要原因很可能是将这种上皮鉴定为大多数脑室内脑脊液的来源。这一发现与中枢液体量或离子平衡失调的疾病和病症的研究直接相关。虽然这一概念得到了绝大多数文献的支持,但脉络丛在脑脊液分泌中的作用最近再次受到质疑。目前与脉络丛相关的研究有三个更新颖、有前途的领域:脉络丛上皮作为中枢神经系统发育所必需的介质的来源;脉络丛作为微生物和免疫细胞进入中枢神经系统的途径;脉络丛作为一种潜在的药物输送途径进入中枢神经系统,绕过血脑屏障。因此,本综述的目的是强调脉络丛生理学当前的活跃研究领域和一些持续存在争议的问题。